锂矿石基因特性及其对选矿的影响.pdf
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1、2024年第4期doi:10.3969/j.issn.1671-9492.2024.04.002有色金属(选矿部分)锂矿石基因特性及其对选矿的影响23肖仪武1.2,王臻1,2,冯凯1,,王明燕1,2,金建文1,2,叶小璐1.2,部伟1,2,权鸿雁1,2(1.矿冶科技集团有限公司,北京10 0 16 0;2.矿物加工科学与技术国家重点实验室,北京10 2 6 2 8)摘要:锂是重要的战略性新能源矿产,锂矿床主要有卤水型、伟晶岩型、花岗岩型、隐爆角砾岩型和黏土型等五种类型。对于后四类固体矿床来说,因成矿条件及过程的差异,其矿石基因特性具有明显不同。伟晶岩型锂矿Li2O品位高,锂矿物主要为锂辉石、透
2、锂长石、磷锂铝石和锂云母等;花岗岩型锂矿Li2O品位通常较低,但矿床规模大,锂主要赋存于锂白云母、铁锂云母和锂云母中;隐爆角砾岩型锂矿Li2O品位也较高,矿石中的含锂矿物较单一,通常为锂云母;黏土型锂矿中的锂主要赋存在锂的独立矿物(锂绿泥石、羟硼硅钠锂石等)中,或以类质同象和/或吸附形式赋存于黏土矿物(高岭石、伊利石、蒙脱石等)和一水硬铝石中。矿石中锂的回收利用工艺与锂的赋存状态密切相关。花岗岩型锂矿和黏土型锂矿资源在我国广泛分布,随着提锂技术的发展,这两种类型的锂资源具有广阔的开发利用前景。关键词:锂矿;矿石基因;赋存状态;关键矿产;工艺矿物学中图分类号:TD912Genetic Chara
3、cteristics of Lithium Ores and Its Influence on Mineral BeneficiationXIAO Yiwu*2,WANG Zhen*2,FENG Kail-2,WANG Mingyan-2,JIN Jianwen*2,2.State Key Laboratory of Mineral Processing,Beijing 102628,China)Abstract:Lithium is a critical strategic energy metal,and lithium deposits mainly include five types
4、:brine type,pegmatite type,granite type,cryptoexplosive breccia type and clay type.For the latter foursolid mineral types of deposits,their ore genetic properties are significantly different due to differentmineralization conditions and ore forming processes.Pegmatite type lithium deposits feature h
5、igh grade ofLi,O,and the lithium minerals mainly are spodumene,petalite,montebrasite and lepidolite,Granite typelithium deposits generally have low grade of Liz O and large deposit scale,and the lithium minerals mainlyinclude trilithionite,zinnwaldite,and lepidolite.The Liz O grade of the cryptoexpl
6、osive breccia type lithiumdeposits is relatively high,and the lithium bearing mineral in such deposits is mainly lepidolite.In the claytype lithium deposits,lithium usually forms independent lithium minerals such as cookeite and jadarite,lithium might occur in adsorption and isomorphism states in cl
7、ay minerals such as kaolintie,illite,montmorillonite and diaspore as well.The recovery and utilization of lithium in the lithium ores is closelyrelated to the occurrence state of lithium.Granite type and clay type lithium deposits are widely distributedin China.With the development of lithium extrac
8、tion techniques,these two types of lithium resources havepromising prospects for further development and utilization.Key words:lithium deposit;genetic ore properties;occurrence state;critical minerals;processmineralogy文献标志码:AYE Xiaolul-2,GAO Weil2,QUAN Hongyan-2(1.BGRIMM Technology Group,Beijing 100
9、60,China;文章编号:16 7 1-9 49 2(2 0 2 4)0 4-0 0 2 3-10收稿日期:2 0 2 4-0 3-2 9作者简介:肖仪武(19 6 5一),男,江西上饶人,硕士,正高级工程师,主要从事工艺矿物学研究及矿产资源可利用性评价。24随着现代科技的不断进步和新兴产业的快速崛起,对关键金属(稀有、稀散、稀土及部分稀贵)矿产的需求也会加速增长1-2 。近年来,在高新产业的带动下,锂行业市场高速发展,锂的战略地位逐渐凸显,世界各国围绕锂的竞争也越来越激烈。美国、欧盟、澳大利亚、日本均将其列为关键矿产,我国也将锂矿列为2 4种国家战略性矿产资源之一3-5。锂作为一种核心战略
10、关键金属矿产,其资源高效开发利用技术已成为热点。锂资源按地质成因可划分为卤水型、伟晶岩型、花岗岩型、隐爆角砾岩型和黏土型等五类6-8 。由于成矿条件的不同,不同成因锂矿床在矿石的结构构造、矿物组合、矿物的结晶粒度大小等基因特性方面存在着明显差异,进而对矿石的选别回收产生影响91花岗伟晶岩型矿床伟晶岩型锂矿矿石中LizO品位比较高,一般都在1%以上。通常按照锂矿物种类的不同,将伟晶岩型锂矿石分为锂辉石型和锂云母型。锂辉石型锂矿中,矿石中的锂矿物主要为锂辉石,其次为透锂长石、磷锂铝石、锂云母等;主要脉石矿物为长石、石英、白云母,少量磷灰石、绿泥石、高岭石、黑云母等。锂云母型锂矿相比锂辉石型锂矿更少
11、见,其矿石矿序号SiO2163.83264.30364.04464.58564.41664.03764.19864.20964.541064.571164.221263.711364.261464.181564.341663.901763.981864.221963.892064.332164.492264.052364.15注:*表示计算结果,下同。有色金属(选矿部分)物组成和锂辉石型大致相近,锂矿物主要为锂云母。该类矿石通常具有伟晶结构,有用矿物锂辉石、透锂长石、磷锂铝石、锂云母等的嵌布粒度较粗,粗粒部分可以通过手选回收。一般矿石通过粗磨,有用矿物就能得到充分解离。由于锂辉石比共生的石英、
12、长石等主要脉石矿物密度大一些,对于结晶粒度较粗的锂辉石,可以采用重悬浮液或重介质选矿法使锂辉石成为重矿物产品,而脉石矿物则为轻产品,从而实现锂辉石与伴生脉石矿物的有效分离;细粒部分则可进一步通过浮选回收。锂辉石和透锂长石通常产于伟晶岩的中间带或者核部,两者随温度压力条件的改变可发生相互转换。当温度降低时,透锂长石可以转换为锂辉石和石英集合体,而当压力升高时,锂辉石和石英集合体又可以转换为透锂长石13。透锂长石的可浮性较差,浮选效果不理想,但其密度相对锂辉石、磷锂铝石、石英和长石更低,因此可考虑先采用重介质选矿方法优先分选透锂长石,然后再对锂辉石进行浮选回收14。锂辉石中Liz0含量为5.8%8
13、.1%(表1),磷锂铝石中Liz0含量为7.1%11.5%(表2),当矿石中的锂矿物以锂辉石和磷锂铝石为主时,易于通过选矿方法富集得到高品质的锂精矿(LizO含量6%以上);透锂长石和锂云母中LizO的含量相对较低(表3、4),表1锂辉石电子探针成分分析结果Table 1EPMA compositions of spodumeneAl203Mno27.43一27.610.0427.400.0127.280.0227.580.0427.240.0527.540.0427.060.0427.5727.6927.6427.3727.4327.6327.3727.7227.6327.5127.5327
14、.4826.7827.4927.432024年第4期/%FeORb200.160.02一0.220.30.0.580.610.070.080.250.050.100.040.060.030.040.020.030.110.050.030.04Cs200.02一0.020.010.010.040.010.130.010.050.010.040.180.010.080.110.120.250.170.090.17Li20*8.007.898.067.938.047.938.048.037.977.968.007.978.038.037.940.017.910.018.03一7.858.070.01
15、7.950.097.958.060.017.99Total99.4699.8499.73100.13100.0799.8499.8199.95100.19100.5699.9199.2999.8299.9499.8699.5999.7599.7299.61100.1399.5399.7299.7.92024年第4期序号P2O5150.19249.96349.69450.19549.93650.79749.98850.52950.891049.711149.781250.281349.721449.911549.971649.731749.551849.721950.842049.492149.
16、622249.552349.872449.49序号1234567891011121314151617181920肖仪武等:锂矿石基因特性及其对选矿的影响表2磷锂铝石电子探针成分分析结果Table 2EPMA compositions of montebrasiteAl:O3Cao34.280.0234.380.0234.580.0132.990.0234.060.0334.120.0134.030.0233.590.0133.950.0334.150.0234.160.0134.170.0233.460.0334.130.0234.150.0334.350.0133.570.0233.910.
17、0233.77.0.0333.68.0.0333.790.0133.740.0333.380.0334.130.03表3透锂长石电子探针成分分析结果Table3EPMAcompositions of petaliteSiO2Al:O377.9516.7177.2916.7178.1116.6378.5316.6577.3216.5277.0516.5377.7016.6577.8416.6977.9716.7076.6816.5077.1516.6277.6416.4977.8316.5977.7116.6776.9516.6877.6016.6778.1616.6877.6216.5777.
18、2816.5378.1216.7725FTiO21.290.052.820.061.230.101.880.031.300.061.920.082.090.032.280.061.600.083.430.043.30一0.130.011.760.051.810.033.630.070.720.083.000.103.410.041.270.091.330.043.200.012.890.062.200.082.420.01MnoFeO一0.03一一一0.030.030.010.010.01一0.030.01一一一0.01一一一一Liz0*10.8710.7510.5811.2510.8211.
19、1710.8611.2111.2610.7110.7410.9410.9210.8010.8110.6610.8110.7811.2910.7510.7810.7611.0010.62Li20*4.844.804.864.884.814.794.830.024.844.85一4.770.024.800.014.830.014.84一4.83.0.014.780.034.824.860.014.82一4.80一4.86H20*4.934.454.975.145.054.654.794.754.794.374.405.345.134.874.255.204.734.454.965.254.584.
20、714.984.76Total101.64102.43101.17101.49101.25102.73101.79102.42102.58102.44.102.3.9100.89101.07101.57102.91100.75101.78102.33102.25100.57101.99101.74101.54101.45/%Total99.5398.8099.63100.1098.6798.3799.1899.4299.5297.9698.5998.9799.2799.2198.4399.1299.7099.0298.6199.7526序号SiO2Al203TiO2FeOMnoMgoNa20K
21、20Rb20Cs20Zno148.58 24.270.032.150.140.410.139.262.101.02249.60 25.40350.2022.640.03 2.430.150.550.109.272.261.01449.3523.960.06 1.91549.41 23.61649.1426.220.021.47749.5723.230.021.670.310.150.179.402.021.000.067.364.680.83-3.1097.36848.54 26.33949.1426.220.021.470.140.130.259.612.00 0.331050.2022.6
22、40.032.431149.1426.220.021.470.140.13 0.259.611248.36 27.730.020.270.281349.60 25.401449.6924.841548.8027.051649.60 25.401749.6924.841849.3523.960.061.910.220.160.239.302.180.640.096.76 4.611.14一2.8 597.761949.0225.342048.4327.922148.37 27.330.020.300.312248.64 27.480.02 0.240.26有色金属(选矿部分)表4锂云母电子探针成
23、分分析结果Table 4EPMA compositions of lepidolite一0.330.380.220.160.239.302.180.640.096.764.611.14-2.8597.76一1.750.270.10 0.159.032.37 1.270.140.130.259.61一0.310.360.150.550.109.272.261.012.000.33一0.189.651.840.630.025.254.331.93-2.2198.27一0.330.380.360.340.010.17 9.602.21 0.850.08 7.30 4.710.91-3.0897.99
24、一0.350.390.330.380.360.340.010.179.602.210.850.087.304.710.91-3.0897.99一0.390.44一0.270.292024年第4期/%FLi20*H20*O=FTotal一5.874.391.53-2.4797.41一0.199.892.110.290.056.744.681.21-2.8498.04一6.674.851.20一2.8 198.54一6.764.631.122.000.33一0.239.402.180.720.046.12 4.381.46-2.5897.49一5.50 4.551.82-2.3198.866.67
25、4.851.20-2.8198.54一5.504.551.82-2.3198.86一0.19一0.269.73一0.19 9.892.110.29 0.056.744.681.21-2.8498.040.010.169.43一0.219.911.930.27一0.249.852.170.28 0.025.854.331.63-2.4698.25一0.249.901.950.290.095.654.411.75-2.3898.53一2.8 5一5.50 4.551.82-2.3198.869.892.110.290.056.74.2.170.290.032.301.010.017.124.52
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